Production & Delivery
15-30 Days Production Lead Time



The Q45-DT-2OT is a versatile 3-spool monoblock directional control valve designed for high-performance hydraulic systems. Combining manual and push-pull electromagnet control methods, it offers a rated flow of 45 L/min and can withstand pressures up to 315 bar. Its compact monoblock structure ensures reliability and efficiency across various industrial and mobile applications.
| Q45 Series Monoblock Directional Valve Parameters | |
|---|---|
| Control Method | Manual, Pneumatic, Electro-pneumatic, Electro-hydraulic, Solenoid, Joystick, Solenoid and Manual, Manual and Push-pull Electromagnet, Push-pull Electromagnet |
| Spool | 1 Spool, 2 Spool, 3 Spool, 4 Spool, 5 Spool, 6 Spool, 7 Spool |
| Ambient Temperature Range | -20°C to +80°C (-4°F to +176°F) |
| Structure Type | Monoblock valve |
| Section | 1 Section, 2 Section, 3 Section, 4 Section, 5 Section, 6 Section, 7 Section |
| Operating Viscosity Range | 15 - 75 mm²/s (15 cSt to 75 cSt) |
| Rated Flow | 45 L/min (11.8 US gpm) |
| Max Pressure | 315 bar (4600 psi) |
| Inlet Port | G1/2 |
| Outlet Port | G1/2 |
| Port Size | G1/2 |
The Q45-DT-2OT series provides an integrated solution for complex hydraulic circuitry. Featuring a triple-spool design, it allows for the precise simultaneous or independent control of multiple hydraulic actuators. Key features include: 1. Dual Control Mode: Supports both traditional manual lever operation and electronic push-pull electromagnet control, offering maximum flexibility for remote or manual intervention. 2. High Durability: Engineered with a monoblock cast iron body to minimize leakage and maximize mechanical strength under high-pressure conditions (up to 4600 psi). 3. Wide Temperature Range: Optimized to operate reliably between -20°C and +80°C, making it suitable for extreme outdoor environments. 4. Standard G1/2 Porting: Simplifies installation with universal pipe fittings. This valve is ideal for agricultural machinery, material handling equipment, and construction vehicles where precise flow distribution and multi-functional control are critical for operational efficiency.



